An368 – Cirrus Logic AN368 User Manual

Page 53

Advertising
background image

AN368

AN368REV2

53

It is recommended to choose V

Reflected

to equal 37% of V

Zener

. Voltage V

Reflected

is set to 116.6V, leaving

183V overshoot to dissipate as leakage inductance energy. The actual overshoot range is from 65V to 95V,
depending on the clamp zener tolerance. See Equation 82:

c. Determine the Flyback Transformer Turns Ratio
Calculate a turns ratio N using Equation 4:

d. Select the Full Brightness Switching Frequency
The maximum switching frequency F

sw(max)

for the second stage is configured at ~35.7kHz. Register TTFREQ

at Address 46 is set to ‘10001100’, and the minimum switching period is calculated using Equation 5:

The minimum switching frequency F

sw(min)

for the second stage is configured at ~5kHz. Register TTMAX at

Address 38 is set to ‘00011111’, and the maximum switching period is calculated using Equation 6:

The maximum second-stage switching period that is measured by the controller algorithm is configured to
204.75

s. Bits TT_MAX[1:0] in register Config3 at Address 35 are set to ‘11’.

Calculate output voltage V

MODE1

and output current I

MODE1

using Equations 7 and 8, respectively:

The output voltage, V

MODE2

, and output current, I

MODE2

, are calculated using Equations 9 and 10,

respectively:

V

Breakdown

V

BST max

V

Zener

V

M

in

arg

+

+

220V 315V 65V

+

+

600V

=

=

=

[Eq. 82]

N

V

Reflected

V

CH1 max

V

CH2 max

+

--------------------------------------------------------------

116.6V

9.7V 10.3V 0.7V 0.25V

+

+

+

---------------------------------------------------------------------------------

5.57

=

=

=

[Eq. 83]

1

F

sw max

---------------------

TTFREQ[7:0] 4

50ns

=

[Eq. 84]

140 4

=

50ns

28

s

=

1

F

sw min

--------------------

TTMAX[7:0] 128 127

+

 50ns

=

[Eq. 85]

31

128 127

+

=

50ns

204.75

s

=

V

MODE1

V

CH1

V

CH2

V

D15

V

D5

+

+

+

9.7V 10.3V 0.7V 0.25V

+

+

20.95V

=

+

=

=

[Eq. 86]

I

MODE1

I

CH2

213mA

=

=

[Eq. 87]

V

MODE2

V

CH1

V

D15

+

9.7V 0.7V

10.4V

=

+

=

=

[Eq. 88]

I

MODE2

I

CH1

I

CH2

488mA 213mA

275mA

=

=

=

[Eq. 89]

Advertising